Boeglin D, Xiang Z, Sorenson N B, Wood M S, Haskell-Luevano C, Lubell W D
Département de Chimie, Université de Montréal, C.P. 6128, Succursale Centre-Ville, Montréal, Québec H3C 3J7, Canada.
Chem Biol Drug Des. 2006 Apr;67(4):275-83. doi: 10.1111/j.1747-0285.2006.00378.x.
The melanocortin pathway is an important participant in the regulation of skin pigmentation, steroidogenesis, obesity, energy homeostasis, and exocrine gland function. Melanocortin agonists contain the putative sequence 'His-Phe-Arg-Trp', which has been designated as the 'message' sequence for melanocortin peptides, and this sequence has been hypothesized to adopt a bioactive reverse turn conformation. Exploring the relationship between its structure and biological activity, we report the synthesis and evaluation of seven aza-analogs of the potent melanocortin receptor agonist Ac-His-D-Phe-Arg-Trp-NH2. Aza-amino acids, in which the alpha-carbon was replaced by nitrogen, were inserted along the peptide sequence to probe the importance of local configuration and turn conformation on the biology of this tetrapeptide. Although systematic substitution of aza-amino acids for the D-Phe and Arg residues led to a significant loss of activity relative to the parent peptide for all melanocortin receptor subtypes examined, substitution of aza-amino acids at the C-terminal Trp residue gave analogs equipotent to the parent peptide. In summary, the aza-scan has demonstrated that recognition of this tetrapeptide by the melanocortin receptors is particularly sensitive to modifications of configuration and conformation at the D-Phe and Arg residues versus the Trp amino acid. In light of aza-residues imparting resistance from enzymatic degradation, C-terminal aza-amino acid analogs may be used to design new peptide mimics with enhanced metabolic stability.
黑皮质素途径是皮肤色素沉着、类固醇生成、肥胖、能量稳态和外分泌腺功能调节中的重要参与者。黑皮质素激动剂包含假定序列“His-Phe-Arg-Trp”,该序列已被指定为黑皮质素肽的“信息”序列,并且已假设该序列采用生物活性反向转角构象。为了探索其结构与生物活性之间的关系,我们报告了强效黑皮质素受体激动剂Ac-His-D-Phe-Arg-Trp-NH2的七种氮杂类似物的合成与评估。沿着肽序列插入α-碳被氮取代的氮杂氨基酸,以探究局部构型和转角构象对该四肽生物学特性的重要性。尽管对于所有检测的黑皮质素受体亚型,用氮杂氨基酸系统取代D-Phe和Arg残基导致相对于亲本肽活性显著丧失,但在C端Trp残基处取代氮杂氨基酸得到了与亲本肽等效的类似物。总之,氮杂扫描表明,黑皮质素受体对该四肽的识别对D-Phe和Arg残基相对于Trp氨基酸的构型和构象修饰特别敏感。鉴于氮杂残基赋予抗酶降解能力,C端氮杂氨基酸类似物可用于设计具有增强代谢稳定性的新型肽模拟物。